Answer:
449.7 kPa
Explanation:
We prepare the Ideal Gases Law to solve this question:
P . V = n . R . T
As moles of gas are the same, and R is constant, we can compare this two situations:
P₁ . V₁ / T₁ and P₂ . V₂ / T₂
As this remains constant we can propose:
P₁ . V₁ / T₁ = P₂ . V₂ / T₂
We convert T° to Absolute value: 30°C + 273 = 303 K
We convert the volume from mL to L
800 mL . 1L /1000 mL = 0.8 L
200 mL . 1L /1000 mL = 0.2 L
1 atm . 0.8 L / 273 K = P₂ . 0.2L / 303k
(0.8 L.atm / 273K ) . 303k = P₂ . 0.2L
0.8879 L.atm / 0.2L = 4.4 atm
We convert pressure from atm to kPa
4.4 atm . 101.3 kPa / 1 atm = 449.7 kPa